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SELECTION OF AN ANALYZER IN A STRIPPED SOUR WATER APPLICATION

机译:酸水分离装置中分析仪的选择。

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This paper will discuss the selection process of an on-line analysis of the discharge from a Sour Water Stripper. The Suncor Energy Tar Island facility has initiated two major expansions over a period often -(10) years. A dedicated effort was made to update the design to take advantage of modern technology during the engineering of each expansion. Reliable measurements for trace levels of both Hydrogen Sulphide (H_2S) and Ammonia (NH3) in the "Stripped Sour Water" has been of particular interest in the latest expansion project. Suncor utilizes two steps in the stripping of the sour water: first the process stream is routed to the Sour Water Flash Drum; and secondly the Sour Water is then routed to the Sour Water Stripper. The Stripped Sour Water is then routed back to the process units. Unacceptable levels of H_2S in process water can cause severe operating issues in the vent recovery unit. Unacceptable levels of Ammonia (NH3) in the off spec water that has diverted to the storage ponds can lead to upsets in the level of anaerobic bacteria. Potential off gassing of either H_2S or NH_3 from either the process water streams or the storage ponds has been identified as an unsafe operating condition for the plant personnel. The primary focus of this paper is the actual process analyzer and method of analytical technique. The sample conditioning system is not considered.
机译:本文将讨论酸水汽提塔排放物在线分析的选择过程。 Suncor能源焦油岛工厂通常在(10)年内进行了两次重大扩建。在每次扩展的工程设计过程中,都竭尽全力更新设计以利用现代技术。在最新的扩建项目中,可靠的测量“剥离酸水”中痕量的硫化氢(H_2S)和氨(NH3)的水平尤为重要。 Suncor在酸水的汽提中采用了两个步骤:首先将工艺物流输送至酸水闪蒸罐;然后将酸水送至酸水汽提塔。然后将汽提的酸水送回到处理单元。工艺水中H_2S的含量过高会导致排气口回收装置中出现严重的运行问题。转移到储存池的不合格水中的氨(NH3)含量过高,会导致厌氧细菌含量降低。对于工艺人员而言,从工艺水流或存储池中潜在释放出H_2S或NH_3可能是不安全的操作条件。本文的主要重点是实际的过程分析器和分析技术的方法。不考虑样品调节系统。

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